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111.
Leaves and chloroplast suspensions of severely and slightly iron deficient cucumber ( Cucumis sativus L.) plants were characterized by low-temperature fluorescence emission spectroscopy and Deriphat polyacrylamide gel electrophoresis. The emission spectra of the chloroplast suspensions were resolved into Gaussian components and those changes induced by iron deficiency were related to the variations in the chlorophyll-protein pattern. The symptoms described with these methods were also correlated with the iron content of the leaves. It was concluded that the lack of physiologically active iron caused a relative decrease of photosystem I (PSI) and light harvesting complex I (LHCI), together with the long wavelength fluorescence, especially the 740 nm Gaussian component, and. to a much lesser extent, of the photosystem II (PSII) core complexes (relative increase of 685, 695 nm components). However, the relative decrease in the amount of light harvesting complex II (LHCII) was followed by a relative increase in its fluorescence band at 680 nm, showing that energy transfer from LHCII to core complex II (CCII) was partly disturbed. Thus iron deficiency affected the photosynthetic apparatus in a complex way: it decreased the synthesis of chlorophylls (Chls) and influenced the expression and assembly of Chl-binding proteins.  相似文献   
112.
Incubation of radish (Raphanus sativus L.) seeds in the presence of 1 or Smol m?3 Ca-EGTA, which increased Ca2+ activity in the incubation medium (c. 0.24 or 0.37 mol m?3 at 24 h with respect to c. 0.13 mol m?3 in the control), did not affect germination, the restoration of K+ net influx, the increase in DNA and RNA levels or protein synthesis. Incubation in 1 mol m?3 Na-EGTA, which reduced Ca2+ activity in the incubation medium (20 mmol m?3 at 24 h), decreased the total Ca2+ level in embryo axes (-21%), but only slightly inhibited the increase in fresh weight without affecting the restoration of K+ net influx, the increase in DNA and RNA levels or protein synthesis. In the presence of 5 mol m?3 Na-EGTA (Ca2+ activity in the incubation medium was 0.6 mmol m?3), the decrease in the total Ca2+ level was greater (c. -27%) and the increases in fresh weight, DNA and RNA were inhibited by about 50, 39 and 40%, respectively. These results indicate that increased Ca2+ availability does not affect germination and suggest that the effect of Na-EGTA, at least up to 5 mol m?3, is a result of an induction of Ca2+ deficiency. The amount and specific activity of calmodulin (CaM) present in the soluble fraction (100 000g) of radish embryo axes greatly increased during the first 24 h of incubation (c. 5-fold and 7-fold, respectively). This increase was very similar in the Ca-EGTA-treated seeds but was inhibited (c. -38%) by 1 mol m?3 Na-EGTA, even if the increases in DNA and RNA levels and protein synthesis were not significantly reduced. The lower amount of CaM after 24 h of incubation in 1 mol m?3 Na-EGTA (c. -30%) was due to a reduction in the fraction of CaM bound to a proteinaceous CaM inhibitor present in radish seeds [M. Cocucci & N. Negrini (1988) Plant Physiology 88, 910–914] and not involved in the metabolic reactivation of the seed. These results suggest that the level of CaM is controlled by Ca2+ availability and that the CaM inhibitor has a role in controlling the amount of Ca-CaM available for the Ca-CaM-dependent enzymes.  相似文献   
113.
We assessed the effects of population size and genetic relatedness on rates of pollen gene flow into experimental populations of the insect-pollinated, self-incompatible plant Raphanus sativus. We created synthetic populations of sizes 2, 5, 10, and 20 with three genetic structures (full siblings, half siblings, and unrelated plants). Following pollination in a natural setting, we conducted a simple paternity exclusion analysis using the allozyme genotypes of progeny to measure apparent gene flow and Monte Carlo simulations to estimate total gene flow. Estimates of apparent pollen gene flow rates ranged from 0 to 100% and were similar in rank to estimates of total gene flow. There were significant effects of population size and relatedness on the rate of apparent gene flow, and there were significant population size by relatedness interactions. Populations of size 2 had higher gene flow rates than larger populations, gene flow being negatively associated with the level of cross-compatibility (as measured by hand pollinations). Gene flow into populations of size 2 was also negatively associated with the distance to the nearest population of size 10 or 20. These results suggest that interactions among demography (population size), genetics (cross-compatibility), and ecology (pollinator behavior) are important influences on pollen gene flow rates into small plant populations.  相似文献   
114.
极性和NAA浓度对发根农杆菌遗传转化黄瓜子叶的影响   总被引:1,自引:0,他引:1  
本文研究了极性和NAA浓度对发根农杆菌(Agrobacteriumrhizolgenes)R1000和R1601诱导黄瓜子叶产生毛状根的影响。结果表明,感染发根农杆菌R1000和R1601的黄瓜子叶都仅在其下端产生毛状根。培养基中加人0.1mgL-1和5.0mgL-1NAA预培养和共培养都可提高发根农杆菌R1000和R1601对黄瓜子叶外植体下端的生根能力。但仅用5.0mgL-1NAA预培养和共培养的感染发根农杆菌R1000和R1601的子叶外植体上端可不同程度地生根,生根率分别为32.5%和6.48%。经检测,毛状根均含有农杆碱和甘露碱。  相似文献   
115.
分别以不同浓度(A_(450nm)表示)的高压灭活白色葡萄球菌、大肠杆菌及水杨酸对萝卜溶菌酶进行不同时间的诱导.结果表明,诱导时间24h效果最好,白色葡萄球菌最适浓度A_(450nm)为0.94,酶的活力提高了2.34倍;大肠杆菌最适浓度是A_(450)nm为0.55,诱导酶活力提高了0.75倍,以0.2%的水杨酸为诱导物时,第4d和第8d的效果最好,酶活力分别提高了2.4和1.7倍.以酶作用产物进行田间叶面喷施和叶面喷施加根部灌施进行诱导,48h后酶活力提高2.16和3.66倍.  相似文献   
116.
本文对黄瓜0—7天幼苗及去顶后0—8天诱导花芽分化苗与诱导营养芽分化苗的子叶节进行了系统石蜡切片观察,未发现0—7天幼苗的子叶叶腋存在潜伏芽。去顶后1—2天在子叶叶柄基部与切口之间的表皮下细胞分裂形成突起,去顶后6天诱花苗与诱芽苗的突起表现出形态差异,诱花苗突起的上端变钝,而诱芽苗突起的上端成尖锥状。去顶后8天诱花苗在子叶叶柄与切口之间形成完整的花芽。另发现有少量花芽起源于切口处细胞。对去顶后0—6天诱花苗与诱芽苗的子叶节还进行了电镜扫描观察,观察结果与石蜡切片基本一致。  相似文献   
117.
西藏裸大麦主要性状的遗传参数研究   总被引:4,自引:0,他引:4  
根据西藏当前大面积种植的9个裸大麦品种, 运用数量遗传学的原理和方法,研究其主要性状的平均数、变异系数、广义遗传率、相关遗传率、遗传相关系数及表型相关系数,为提高今后育种效率提供一些信息。  相似文献   
118.
119.
The lipid composition of leaves has been investigated in different genotypes of cucumber ( Cucumis sativus L.), which differ in temperature requirement for cultivation. In addition the effects of hardening by low but non-chilling temperature, soil heating and grafting (on the chilling-resistant C. ficifolia L.) on lipid composition have been studied. Content and composition of phospholipids and sterols were determined as well as phospholipid/sterol ratio, and fatty acid composition of total lipids and the different phospholipids.
The effects of genetic differentiation and of the various culture treatments on lipid composition of the leaves were very different. Genetic differentiation was evident as higher levels of Iinolenic acid in several phospholipids in the more cold-tolerant cultivars. Hardening the plants by low temperature resulted in a higher phospholipid level (especially phosphatidyl choline), more unsaturated phospholipid, and lowering of the sterol/phiospholipid ratio, all properties which may contribute to a higher membrane fluidity and lower growth temperature limit. Soil healing reduced the phospholipid level of the leaves slightly, and a higher content of 3- trans -hexadece-noic acid in phosphatidyl glycerol was observed. Grafting cucumber on the cold-resistant rootstock of C. ficifolia also raised the level of trans -hexadecenoic acid in phosphatidyl glycerol. The role of this fatty acid in the functioning of the chloroplast is discussed.  相似文献   
120.
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